Title :
Investigation of Extracting Photonic Crystal Lattices for Guided Modes of GaAs-Based Heterostructures
Author :
Benisty, Henri ; Danglot, J. ; Talneau, Anne ; Enoch, Stefan ; Pottage, John M. ; David, Aurélien
Author_Institution :
Lab. Charles Fabry, Inst. d´´Opt. Grad. Sch., Palaiseau
Abstract :
The issue of extracting guided modes from a standard light-emitting heterostructure similar to those of visible or near-infrared light-emitting diodes is considered with respect to the role of lattices and of the amount of omnidirectionality in the extraction performances. Triangular lattices are first-order natural candidates. We examine first whether they can be made omnidirectional thanks to a grating + coupler combination initially proposed by Fehrembach et al (2001), whereby the short periodicity concentrates emission in few in-plane modes, and the double periodicity extracts it. We then examine lattices that directly extract, for a Ga(Al)As system on a GaAs substrate, with a specific 3-D mode decay calculation. We compare triangular and Archimedean lattices experimentally and point out the role of photonic strength also through a spectrally and angularly resolved experiment.
Keywords :
III-V semiconductors; gallium arsenide; integrated optics; optical lattices; optical waveguides; photonic crystals; 3-D mode decay calculation; Archimedean lattices; GaAs; GaAs substrate; gallium arsenide based heterostructures; guided modes; light extraction; light-emitting heterostructure; photonic crystal lattices; Gallium arsenide; Geometrical optics; Gratings; Lattices; Light emitting diodes; Microcavities; Periodic structures; Photonic crystals; Spontaneous emission; Substrates; Archimedean lattices; guided modes; light extraction; photonic crystals;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2008.924819